4.7 Article

The effect of different particle sizes and HCl-modified kaolin on catalytic pyrolysis characteristics of reworked polypropylene plastics

期刊

ENERGY
卷 213, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.energy.2020.119080

关键词

Catalytic pyrolysis; Kaolin; HCl-Modified; Particle sizes; Polypropylene plastic

资金

  1. Science and Technology project of Changsha [kh1801219]
  2. Huxiang high level talent gathering project [2019RS1077]
  3. National Natural Science Foundation of China [21706060, 51703061]
  4. Natural Sciences Foundation of Hunan Province, China [2017JJ3103]
  5. Scientific Research Foundation of Hunan Provincial Education Department [17B118]
  6. Hunan Provincial Engineering Technology Research Center for Optical Agriculture [2018TP2003]

向作者/读者索取更多资源

At present, the catalysts used to produce high value products by catalytic pyrolysis of high calorific value waste plastics are expensive. In this study, the catalytic pyrolysis characteristics of reworked polypropylene (PP) plastics were studied by using low-cost kaolin with different particle sizes and HCl modified kaolin. The results show that the catalysts reduced the condensate oil yield and increased the gas yield. C6-C20 was the major components of condensate oil ranging from 90% to 97% in catalyst pyrolysis by significantly decreasing the heavy components (above C20). Kaolin has high cracking efficiency of heavy components into alkanes and alkenes (the range of diesel components). The stronger acid sites on the modified kaolin further promoted the secondary cracking of diesel components, resulting in a great increase in the C6-C11 content. Moreover, HCl-modified kaolin significantly increased the aromaticity of the condensate oil because of the aromatization and Diels-Alder reaction of alkanes and alkenes. Meanwhile, kaolin significantly increased the yield of H-2, and the H-2 yield was increased with the decrease of kaolin particle size. HCl-modified kaolin further promoted the yield and quality of gas. It is found that kaolin is a potential cheap and efficient pyrolysis catalyst. (C) 2020 Elsevier Ltd. All rights reserved.

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